This article focuses on computational multiscale methods for the mechanical response of nonlinear heterogeneous materials. After a short historical note, a brief overview is given of some recent activities in the field, with a particular focus on nonlinear homogenization methods. The two‐scale nonlinear computational homogenization (CH) scheme for mechanics is presented, along with details on representative unit cell aspects and statistics. Model performance is advocated through a decoupled implementation and multiscale schemes based on the nonuniform transformation field analysis. High‐performance parallel multiscale implementations of the CH scheme are addressed in more detail
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
The computational homogenization method enables to derive the overall behavior of heterogeneous mate...
The computational homogenization method enables to derive the overall behavior of heterogeneous mate...
This chapter presents a computational homogenization strategy, which provides a rigorous approach to...
This chapter presents a computational homogenization strategy, which provides a rigorous approach to...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
This article focuses on computational multiscale methods for the mechanical response of nonlinear he...
The computational homogenization method enables to derive the overall behavior of heterogeneous mate...
The computational homogenization method enables to derive the overall behavior of heterogeneous mate...
This chapter presents a computational homogenization strategy, which provides a rigorous approach to...
This chapter presents a computational homogenization strategy, which provides a rigorous approach to...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
This chapter presents a computational homogenization strategy, whichprovides a rigorous approach to ...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...
In the past decades, considerable progress had been made in bridging the mechanics of materials to o...